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Structure-variable sliding mode control of interior permanent magnet synchronous motor in electric vehicles with improved flux-weakening method

机译:电动汽车内部永磁同步电动机的结构变速滑动模式控制,改进的磁通弱化方法

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摘要

A kind of flux-weakening control method based on speed loop structure-variable sliding mode controller is proposed for interior permanent magnet synchronous motor in electric vehicles. The method combines maximum torque per ampere with vector control strategy to control electric vehicle’s interior permanent magnet synchronous motor. During the flux-weakening control phase, the anti-windup integral controller is introduced into the current loop to prevent the current regulator from entering the saturated state. At the same time, in order to further improve the utilization rate of the direct current bus voltage and expand the flux-weakening regulating range, a space vector pulse-width modulation over-modulation unit is employed to contravariant the direct current bus voltage. Comparing with the conventional proportional–integral controller, the proposed sliding mode control algorithm shows that it has more reliable control performance. In addition, more prominent flux-weakening performance of the proposed flux-weakening method is illustrated by numerical simulation comparison.
机译:一种基于速度环结构可变滑模控制器的一种磁通弱化控制方法,用于电动车辆内部永磁同步电动机。该方法将每个安培的最大扭矩与矢量控制策略相结合,以控制电动车辆内部永磁同步电动机。在磁通弱化控制阶段期间,将防风积分控制器引入电流回路中以防止电流调节器进入饱和状态。同时,为了进一步提高直流母线电压的利用率和扩大弱磁通调节范围,空间矢量脉宽调制过调制单元被用于逆变直流总线电压。与传统的比例积分控制器相比,所提出的滑模控制算法表明它具有更可靠的控制性能。此外,通过数值模拟比较说明了所提出的磁通弱化方法的更显着的助熔剂弱化性能。

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